Smith M L, McGuinness J, O'Reilly M K, Nolke L, Murray J G, Jones J F X
Discipline of Anatomy, School of Medicine, University College Dublin, Dublin 4, Ireland.
Department of Cardiothoracic Surgery, Mater Misericordiae University Hospital, Eccles Street, Dublin, Ireland.
Ir J Med Sci. 2017 Aug;186(3):753-756. doi: 10.1007/s11845-017-1564-5. Epub 2017 Jan 25.
The presence of a structural cardiac defect in the setting of dextrocardia is extremely rare. Graspable models allow enhanced appreciation of aberrant structures and vascular relations, particularly in rare and complex cases. This is the first case report of the use of a replica of a patients' anatomy to plan the surgical strategy in the setting of dextrocardia.
We intend to demonstrate the benefit of three-dimensional printing to enhance preoperative planning in complex congenital heart disease undergoing heart transplantation. The anomalous structures encountered include situs inversus dextrocardia, transposition of the great vessels, a single atrium and a dilated double-outlet single right ventricle.
Computed Tomography acquisition was performed with the use of ECG multiphase gating technology and contrast enhancement. The structures of interest were segmented and the generated 3D mesh was exported as a stereolithographic (STL) file. The model was printed on a Z-Corp 250 binder jetting printer. Post processing techniques were used to enhance model strength.
Pre-operative 3D visualisation of the patients' anatomy allowed for a more comprehensive surgical strategy to be planned, thus reducing the intra-operative duration and cross-clamp time which are recognised to correlate with reduced patient morbidity.
The ongoing advances in medical image procurement and 3D processing software and printing technology will continue to enhance preoperative planning and thereby improve patient care. We demonstrate the pivotal role played by such technologies in advancing spatial comprehension of complex aberrant anatomy.
右位心情况下存在心脏结构缺陷极为罕见。可握持模型有助于更好地理解异常结构和血管关系,特别是在罕见和复杂病例中。这是首例使用患者解剖结构复制品来规划右位心手术策略的病例报告。
我们旨在证明三维打印在增强接受心脏移植的复杂先天性心脏病术前规划方面的益处。遇到的异常结构包括右位心、大动脉转位、单心房和扩张的双出口单右心室。
使用心电图多相门控技术和对比增强进行计算机断层扫描采集。对感兴趣的结构进行分割,并将生成的3D网格导出为立体光刻(STL)文件。该模型在Z-Corp 250粘结剂喷射打印机上打印。使用后处理技术增强模型强度。
患者解剖结构的术前3D可视化有助于规划更全面的手术策略,从而减少术中持续时间和主动脉阻断时间,而这些时间被认为与降低患者发病率相关。
医学图像采集、3D处理软件和打印技术的不断进步将继续增强术前规划,从而改善患者护理。我们展示了此类技术在推进对复杂异常解剖结构的空间理解方面所起的关键作用。